This is a Validated Antibody Database (VAD) review about FLAG, based on 175 published articles (read how Labome selects the articles), using FLAG product in experiments. It is aimed to help Labome visitors find the most suited FLAG. Please note the number of articles fluctuates since newly identified citations are added and citations for discontinued catalog numbers are removed regularly.
synonym: FLAG, pFLAG-CMV5a vector, FLAG M2 affinity column, FLAG peptide, FLAG M2, p3XFLAG-CMV-14, pFlag, pcDNA3-based Flag vector, Flag-tagged Protein Immunoprecipitation Kit, pCMV4-Flag vector, Flag-specific antibodies, p3xFLAG-CMV7.1, p-3XFlag–CMV-10, pFLAG-CMV vector, pcDNA3/Flag, α-Flag bead IP, pCMV-Flag5b vector, anti-FLAG, FLAG BioM2 antibody, FLAG-FITC-conjugated antibody, FLAG M2-HRP, BAP)-FLAG, FLAG-M2

Abcam anti-FLAG antibody was used to perform ELISA assays in order to investigate the mechanism of the pharmacological activity of PTC124 Ab1162to the paper
Abcam anti-FLAG antibody conjugated with Allophycocyanin was used to perform flow cytometry in order to investigate virus-induced evolution of transferrin receptor ab72569to the paper
Abcam anti-FLAG antibody was used to perform immunoprecipitation in order to study a novel protein prenyltransferase regulates notch signaling in Drosophila to the paper
ABCAM rabbit anti-FLAG was used to perform immunohistochemistry in order to show the structure and formation principles of Vibrio cholerae biofilms to the paper
Invitrogen pDest-flag plasmid was used to perform DNA cloning in order to investigate the role of FBW7 in the Notch signalling pathway to the paper
Invitrogen FLAG antibody was used to perform immunoprecipitation in order to investigate the relations between Dok-4 and T cell to the paper
Invitrogen pFLAG-CMV5a vector was used to clone ORF encoding the SOSTDC1 protein in order to investigate SOSTDC1 expression in normal human kidney cells and clear cell renal carcinoma to the paper
Santa Cruz Biotechnology
Santa cruz anti-flag antibody was used to perform ChIP assays in order to demonstrate that the expression of the dickkopf family in Ewing family tumor cells were affected by EWS/ETS to the paper
Santa Cruz monoclonal anti-Flag was used to perform western blot and immunocytochemistry in order to show that global sumoylation and Pias3 stabilization could be regulated by nitric oxide to the paper
OriGene
Zhongshan Goldenbridge Biotechnology Corporation anti-Flag was used to perform western blot in order to show that AtCERK1 could be activated through dimerization induced by Chitin to the paper
MilliporeSigmaMilliporeSigma FLAG productshown:30; total:161
Sigma mouse anti-Flag antibody was used to perform immunohistochemistry in order to investigate the regulatory effect of Myrf on central nervous system myelination F3165to the paper
Sigma ANTI-FLAG M2 affinity gel was used to perform immunoprecipitation in order to show the structure of CLOCK:BMAL1 transcriptional activator complex A2220to the paper
Sigma mouse anti-Flag was used in 1:5000 to perform western blot in order to show that antioxidant responses could be achieved by pyruvate kinase M2 inactivation F1804to the paper
Sigma-Aldrich anti-FLAG was used to perform western blot in order to study the mechanism by which one trihelix DNA binding protein regulates hypoxia-responsive transcriptional activation in Arabidopsis A8592to the paper
Sigma FLAG antibody was used to perform immunocytochemistry in order to explore the mechanism by which Wdpcp regulates directional cell migration and cell polarity F7425to the paper
Sigma anti-FLAG antibody was used to perform western blot and ChIP assay in order to investigate the regulatory mechanism of the expression of the florigen gene FT in Arabidopsis F7425,A8592to the paper
Sigma mouse anti-FLAG antibody was used to perform western blot in order to investigate influenza nucleoprotein evolution F1804to the paper
Sigma-Aldrich mouse anti-FLAG-HRP antibody was used to perform western blot in order to investigate the role of PVRL4 in tumor progression A8592to the paper
Sigma anti-FLAG was used to perform western blot in order to study the functions of TAF7L in adipocyte differentiation F3165to the paper
Sigma Aldrich anti-FLAG antibody was used to perform flow cytometry in order to study the dynamic behavior of the Stat5 signal during basal and stress erythropoiesis F4049to the paper
Sigma anti-Flag was used to perform western blot in order to show that cryptochrome could be studied by specific small molecule activators F1804to the paper
SIGMA anti-FLAG M2 antibody was used to perform western blot in order to investigate the important roles of DILP8 in regulation of peripheral tissue growth in Drosophila F1804to the paper
Sigma anti-Flag M2 affinity gel was used to perform immunoprecipitation in order to show that Sirt5 could reverse protein lysine succinylation and malonylation A2220to the paper
Sigma anti-M2-FLAG was used to perform ChIP assay in order to show that Isw1 and Chd1 nucleosome-spacing enzymes are essential for nucleosome organization F1804to the paper
Sigma anti-Flag-HRP was used to perform western blot in order to show that RHINO is important for ATR activation during DNA damage responses A8592to the paper
Sigma Aldrich anti-FLAG was used in 1/200 to perform immunoprecipitation in order to show that regulatory subunit of protein phosphatase 1 could be blocked by small molecule selectively F1804to the paper
Sigma anti-flag M2 Affinity gel was used to perform immunoprecipitation in order to demonstrate that KSHV tegument protein play a crucial role in cellular transport of viral particles A2220to the paper
Sigma anti-Flag M2 agarose affinity gel was used to immunoprecipitate SIRT2-or FOXO1-Flag in immunoprecipitation to study its interaction with other proteins in order to illustrate the suppression of adipocyte differentiation performed by SIRT2 A2220to the paper
Anti-Flag antibody was used in immunoprecipitation analysis,in order to study the role of QIL1 as a subunit of MICOS complex in maintaining cristae junction integrity, cristae morphology, and mitochondrial function to the paper
Anti-FLAG antibody was used to perform Western blotting in order to study the mechanism that how the Mms21 SUMO Ligase is controlled during DNA Repair to the paper
Anti-Flag antibody was used for western blotting, in order to study the mechanism by which Cry1/2 protect genomic integrity to the paper
Anti-Flag antibody was used for Western blotting, in order to study the mechanism by which MAPKAPK2/MAPKAPK3 activate starvation-induced autophagy to the paper
Sigma anti-Flag M2 monoclonal antibody was used to perform western blot in order to study therole of the human lariat RNA debranching enzyme 1 protein in both the nucleus and the cytoplasm to the paper
Anti-FLAG-M2 antibody was used in this study to perform ribosome profiling on cultured human cells under conditions of severe stress induced with sodium arsenite to the paper
Sigma anti-FLAG was used to perform western blot in order to study the role of the histone demethylase KDM3A in response to heat shock to the paper
Sigma mouse anti-FLAG antibody was used to perform immunoprecipitation in order to study the regulation of wingless signaling on the degradation of armadillo/beta-Catenin to the paper
Sigma monoclonal mouse anti-FLA antibody was used to perform western blot in order to study the regulation mechanism of the cell division by DidA in Caulobacter crescentus to the paper
Sigma anti-FLAG was used to perform western blot in order to study the regulation of a bacterial histidine kinase on cell fate to the paper
SIGMA M2 anti-Flag antibody was used to perform protein purification in order to study the role of the XPD helicase in DNA repair to the paper
Sigma-Aldrich anti-Flag was used to perform western blot in order to study the mutation of RNAP pre-initiation sites by cytidine deaminases in yeast to the paper
Cell signaling rabbit anti-Flag antibody was used to perform immunohistochemistry in order to investigate the regulatory effect of Myrf on central nervous system myelination 2368to the paper
Cell Signaling Technology anti-FLAG antibody was used to perform western blot and immunocytochemistry in order to investigate the functional property of the MCU gene 2368to the paper
Cell Signaling polyclonal anti-FLAG antibody was used to perform immunocytochemistry in order to investigate the involvement of Fam20C in the phosphorylation of extracellular proteins to the paper
Cell Signaling anti-FLAG was used to perform western blot and immunoprecipitation in order to show that vacuolar H+-ATPase is involved in mTOR pathway for mTORC1 translocation and activation to the paper
Cell Signaling Technology anti-FLAG was used to perform western blot and immunoprecipitation in order to show that how growth factor signaling is inhibited by mTOR through mTOR-regulated phosphoproteome to the paper
Promega
Promega pCMV-Flag5b vector was used for transfection in order to study the association of the chromatin remodelling factor BRG1 with the tumor suppressor p16INK4a to the paper
Agilent Technologies
Anti-FLAG antibody was used for immunoassay, in order to study the role of GTPase Rab26 in directing synaptic and secretory vesicles into the autophagy pathway to the paper
Stratagene pCMV4-Flag vector was used to generate the plasmid pCMV4-NOR1 in order to study the effect of orphan nuclear receptor NOR-1 on 3, 5-cyclic adenosine 5-monophosphate-dependent uncoupling protein-1 gene transcription to the paper
Anti-Flag antibody was used in order to study the role of a cascade consisting of GSK3beta, Dzip1, and Rab8 in regulating ciliogenesis after mitosis PM020to the paper
Millipore anti-FLAG antibody was used to perform western blot in order to study Mtb life cycle to the paper
Millipore mouse anti-Flag primary antibodies were used to perform western blot in order to show that planar cell polarity is essential for tissue morphogenesis to the paper
Articles Reviewed
  1. Guarani V, McNeill E, Paulo J, Huttlin E, Fröhlich F, Gygi S, et al. QIL1 is a novel mitochondrial protein required for MICOS complex stability and cristae morphology. elife. 2015;4: pubmed publisher
  2. Zhang B, Zhang T, Wang G, Wang G, Chi W, Jiang Q, et al. GSK3β-Dzip1-Rab8 cascade regulates ciliogenesis after mitosis. PLoS Biol. 2015;13:e1002129 pubmed publisher
  3. Bermúdez López M, Pociño Merino I, Sánchez H, Bueno A, Guasch C, Almedawar S, et al. ATPase-dependent control of the Mms21 SUMO ligase during DNA repair. PLoS Biol. 2015;13:e1002089 pubmed publisher
  4. Papp S, Huber A, Jordan S, Kriebs A, Nguyen M, Moresco J, et al. DNA damage shifts circadian clock time via Hausp-dependent Cry1 stabilization. elife. 2015;4: pubmed publisher
  5. Wei Y, An Z, Zou Z, Sumpter R, Su M, Zang X, et al. The stress-responsive kinases MAPKAPK2/MAPKAPK3 activate starvation-induced autophagy through Beclin 1 phosphorylation. elife. 2015;4: pubmed publisher
  6. Masaki S, Yoshimoto R, Kaida D, Hata A, Satoh T, Ohno M, et al. Identification of the specific interactors of the human lariat RNA debranching enzyme 1 protein. Int J Mol Sci. 2015;16:3705-21 pubmed publisher
  7. Binotti B, Pavlos N, Riedel D, Wenzel D, Vorbrüggen G, Schalk A, et al. The GTPase Rab26 links synaptic vesicles to the autophagy pathway. elife. 2015;4:e05597 pubmed publisher
  8. Andreev D, O Connor P, Fahey C, Kenny E, Terenin I, Dmitriev S, et al. Translation of 5' leaders is pervasive in genes resistant to eIF2 repression. elife. 2015;4:e03971 pubmed publisher
  9. Cheng M, Zhang Y, Cao C, Zhang W, Zhang Y, Shen Y. Specific phosphorylation of histone demethylase KDM3A determines target gene expression in response to heat shock. PLoS Biol. 2014;12:e1002026 pubmed publisher
  10. Reim G, Hruzova M, Goetze S, Basler K. Protection of armadillo/β-Catenin by armless, a novel positive regulator of wingless signaling. PLoS Biol. 2014;12:e1001988 pubmed publisher
  11. Modell J, Kambara T, Perchuk B, Laub M. A DNA damage-induced, SOS-independent checkpoint regulates cell division in Caulobacter crescentus. PLoS Biol. 2014;12:e1001977 pubmed publisher
  12. Childers W, Xu Q, Mann T, Mathews I, Blair J, Deacon A, et al. Cell fate regulation governed by a repurposed bacterial histidine kinase. PLoS Biol. 2014;12:e1001979 pubmed publisher
  13. Kuper J, Braun C, Elias A, Michels G, Sauer F, Schmitt D, et al. In TFIIH, XPD helicase is exclusively devoted to DNA repair. PLoS Biol. 2014;12:e1001954 pubmed publisher
  14. Taylor B, Wu Y, Rada C. Active RNAP pre-initiation sites are highly mutated by cytidine deaminases in yeast, with AID targeting small RNA genes. elife. 2014;3:e03553 pubmed publisher
  15. Giuntoli B, Lee S, Licausi F, Kosmacz M, Oosumi T, van Dongen J, et al. A trihelix DNA binding protein counterbalances hypoxia-responsive transcriptional activation in Arabidopsis. PLoS Biol. 2014;12:e1001950 pubmed publisher
  16. Lin S, Zhang L, Lin X, Zhang L, Garcia V, Tsai C, et al. Nuclear envelope protein MAN1 regulates clock through BMAL1. elife. 2014;3:e02981 pubmed publisher
  17. Aspden J, Eyre Walker Y, Phillips R, Amin U, Mumtaz M, Brocard M, et al. Extensive translation of small Open Reading Frames revealed by Poly-Ribo-Seq. elife. 2014;3:e03528 pubmed publisher
  18. Anafi R, Lee Y, Sato T, Venkataraman A, Ramanathan C, Kavakli I, et al. Machine learning helps identify CHRONO as a circadian clock component. PLoS Biol. 2014;12:e1001840 pubmed publisher
  19. Goriki A, Hatanaka F, Myung J, Kim J, Yoritaka T, Tanoue S, et al. A novel protein, CHRONO, functions as a core component of the mammalian circadian clock. PLoS Biol. 2014;12:e1001839 pubmed publisher
  20. MacLean A, Orlovskis Z, Kowitwanich K, Zdziarska A, Angenent G, Immink R, et al. Phytoplasma effector SAP54 hijacks plant reproduction by degrading MADS-box proteins and promotes insect colonization in a RAD23-dependent manner. PLoS Biol. 2014;12:e1001835 pubmed publisher
  21. Wang F, He L, Huangyang P, Liang J, Si W, Yan R, et al. JMJD6 promotes colon carcinogenesis through negative regulation of p53 by hydroxylation. PLoS Biol. 2014;12:e1001819 pubmed publisher
  22. White Grindley E, Li L, Mohammad Khan R, Ren F, Saraf A, Florens L, et al. Contribution of Orb2A stability in regulated amyloid-like oligomerization of Drosophila Orb2. PLoS Biol. 2014;12:e1001786 pubmed publisher
  23. Charng W, Yamamoto S, Jaiswal M, Bayat V, Xiong B, Zhang K, et al. Drosophila Tempura, a novel protein prenyltransferase α subunit, regulates notch signaling via Rab1 and Rab11. PLoS Biol. 2014;12:e1001777 pubmed publisher
  24. Ortega C, Liao R, Anderson L, RUSTAD T, Ollodart A, Wright A, et al. Mycobacterium tuberculosis Ser/Thr protein kinase B mediates an oxygen-dependent replication switch. PLoS Biol. 2014;12:e1001746 pubmed publisher
  25. Rousseau A, McEwen A, Poussin Courmontagne P, Rognan D, Nominé Y, Rio M, et al. TRAF4 is a novel phosphoinositide-binding protein modulating tight junctions and favoring cell migration. PLoS Biol. 2013;11:e1001726 pubmed publisher
  26. Huang S, Zhang Z, Zhang C, Lv X, Zheng X, Chen Z, et al. Activation of Smurf E3 ligase promoted by smoothened regulates hedgehog signaling through targeting patched turnover. PLoS Biol. 2013;11:e1001721 pubmed publisher
  27. Cui C, Chatterjee B, Lozito T, Zhang Z, Francis R, Yagi H, et al. Wdpcp, a PCP protein required for ciliogenesis, regulates directional cell migration and cell polarity by direct modulation of the actin cytoskeleton. PLoS Biol. 2013;11:e1001720 pubmed publisher
  28. ZIRIN J, Nieuwenhuis J, Perrimon N. Role of autophagy in glycogen breakdown and its relevance to chloroquine myopathy. PLoS Biol. 2013;11:e1001708 pubmed publisher
  29. Gu X, Wang Y, He Y. Photoperiodic regulation of flowering time through periodic histone deacetylation of the florigen gene FT. PLoS Biol. 2013;11:e1001649 pubmed publisher
  30. Szabó A, Papin C, Zorn D, Ponien P, Weber F, Raabe T, et al. The CK2 kinase stabilizes CLOCK and represses its activity in the Drosophila circadian oscillator. PLoS Biol. 2013;11:e1001645 pubmed publisher
  31. Bujalka H, Koenning M, Jackson S, Perreau V, Pope B, Hay C, et al. MYRF is a membrane-associated transcription factor that autoproteolytically cleaves to directly activate myelin genes. PLoS Biol. 2013;11:e1001625 pubmed publisher
  32. Li Z, Park Y, Marcotte E. A Bacteriophage tailspike domain promotes self-cleavage of a human membrane-bound transcription factor, the myelin regulatory factor MYRF. PLoS Biol. 2013;11:e1001624 pubmed publisher
  33. Delloye Bourgeois C, Gibert B, Rama N, Delcros J, Gadot N, Scoazec J, et al. Sonic Hedgehog promotes tumor cell survival by inhibiting CDON pro-apoptotic activity. PLoS Biol. 2013;11:e1001623 pubmed publisher
  34. Huang H, Wang S, Yin M, Dong L, Wang C, Wu W, et al. Par-1 regulates tissue growth by influencing hippo phosphorylation status and hippo-salvador association. PLoS Biol. 2013;11:e1001620 pubmed publisher
  35. McElroy S, Nomura T, Torrie L, Warbrick E, Gartner U, Wood G, et al. A lack of premature termination codon read-through efficacy of PTC124 (Ataluren) in a diverse array of reporter assays. PLoS Biol. 2013;11:e1001593 pubmed publisher
  36. Tao L, Xie Q, Ding Y, Li S, Peng S, Zhang Y, et al. CAMKII and calcineurin regulate the lifespan of Caenorhabditis elegans through the FOXO transcription factor DAF-16. elife. 2013;2:e00518 pubmed publisher
  37. Sancho R, Blake S, Tendeng C, Clurman B, Lewis J, Behrens A. Fbw7 repression by hes5 creates a feedback loop that modulates Notch-mediated intestinal and neural stem cell fate decisions. PLoS Biol. 2013;11:e1001586 pubmed publisher
  38. Chaudhuri D, Sancak Y, Mootha V, Clapham D. MCU encodes the pore conducting mitochondrial calcium currents. elife. 2013;2:e00704 pubmed publisher
  39. Sidrauski C, Acosta Alvear D, Khoutorsky A, Vedantham P, Hearn B, Li H, et al. Pharmacological brake-release of mRNA translation enhances cognitive memory. elife. 2013;2:e00498 pubmed publisher
  40. Demogines A, Abraham J, Choe H, Farzan M, Sawyer S. Dual host-virus arms races shape an essential housekeeping protein. PLoS Biol. 2013;11:e1001571 pubmed publisher
  41. Gong L, Suchard M, Bloom J. Stability-mediated epistasis constrains the evolution of an influenza protein. elife. 2013;2:e00631 pubmed publisher
  42. Pavlova N, Pallasch C, Elia A, Braun C, Westbrook T, Hemann M, et al. A role for PVRL4-driven cell-cell interactions in tumorigenesis. elife. 2013;2:e00358 pubmed publisher
  43. Mahadevan K, Zhang H, Akef A, Cui X, Gueroussov S, Cenik C, et al. RanBP2/Nup358 potentiates the translation of a subset of mRNAs encoding secretory proteins. PLoS Biol. 2013;11:e1001545 pubmed publisher
  44. Chen X, Wang H, Bajaj K, Zhang P, Meng Z, Ma D, et al. SEC24A deficiency lowers plasma cholesterol through reduced PCSK9 secretion. elife. 2013;2:e00444 pubmed publisher
  45. Lee B, Moon J, Shu J, Yuan L, Newman Z, Schekman R, et al. UNC93B1 mediates differential trafficking of endosomal TLRs. elife. 2013;2:e00291 pubmed publisher
  46. Verma R, Oania R, Kolawa N, Deshaies R. Cdc48/p97 promotes degradation of aberrant nascent polypeptides bound to the ribosome. elife. 2013;2:e00308 pubmed publisher
  47. Zhou H, Kaplan T, Li Y, Grubisic I, Zhang Z, Wang P, et al. Dual functions of TAF7L in adipocyte differentiation. elife. 2013;2:e00170 pubmed publisher
  48. Farcas A, Blackledge N, Sudbery I, Long H, McGouran J, Rose N, et al. KDM2B links the Polycomb Repressive Complex 1 (PRC1) to recognition of CpG islands. elife. 2012;1:e00205 pubmed publisher
  49. Ferguson B, Mansur D, Peters N, Ren H, Smith G. DNA-PK is a DNA sensor for IRF-3-dependent innate immunity. elife. 2012;1:e00047 pubmed publisher
  50. Xiong B, Bayat V, Jaiswal M, Zhang K, Sandoval H, Charng W, et al. Crag is a GEF for Rab11 required for rhodopsin trafficking and maintenance of adult photoreceptor cells. PLoS Biol. 2012;10:e1001438 pubmed publisher
  51. Kang S, Akerblad P, Kiviranta R, Gupta R, Kajimura S, Griffin M, et al. Regulation of early adipose commitment by Zfp521. PLoS Biol. 2012;10:e1001433 pubmed publisher
  52. Moin S, Urban S. Membrane immersion allows rhomboid proteases to achieve specificity by reading transmembrane segment dynamics. elife. 2012;1:e00173 pubmed publisher
  53. Porpiglia E, Hidalgo D, Koulnis M, Tzafriri A, Socolovsky M. Stat5 signaling specifies basal versus stress erythropoietic responses through distinct binary and graded dynamic modalities. PLoS Biol. 2012;10:e1001383 pubmed publisher
  54. Chng S, Xue M, Garner R, Kadokura H, Boyd D, Beckwith J, et al. Disulfide rearrangement triggered by translocon assembly controls lipopolysaccharide export. Science. 2012;337:1665-8 pubmed publisher
  55. Yi W, Clark P, Mason D, Keenan M, Hill C, Goddard W, et al. Phosphofructokinase 1 glycosylation regulates cell growth and metabolism. Science. 2012;337:975-80 pubmed publisher
  56. Imai K, Daido Y, Kusakabe T, Satou Y. Cis-acting transcriptional repression establishes a sharp boundary in chordate embryos. Science. 2012;337:964-7 pubmed publisher
  57. Grima B, Dognon A, Lamouroux A, Chélot E, Rouyer F. CULLIN-3 controls TIMELESS oscillations in the Drosophila circadian clock. PLoS Biol. 2012;10:e1001367 pubmed publisher
  58. Dey A, Seshasayee D, Noubade R, French D, Liu J, Chaurushiya M, et al. Loss of the tumor suppressor BAP1 causes myeloid transformation. Science. 2012;337:1541-6 pubmed
  59. Bogunovic D, Byun M, Durfee L, Abhyankar A, Sanal O, Mansouri D, et al. Mycobacterial disease and impaired IFN-? immunity in humans with inherited ISG15 deficiency. Science. 2012;337:1684-8 pubmed
  60. Chakraborty A, Wang D, Ebright Y, Korlann Y, Kortkhonjia E, Kim T, et al. Opening and closing of the bacterial RNA polymerase clamp. Science. 2012;337:591-5 pubmed publisher
  61. Berk V, Fong J, Dempsey G, Develioglu O, Zhuang X, Liphardt J, et al. Molecular architecture and assembly principles of Vibrio cholerae biofilms. Science. 2012;337:236-9 pubmed publisher
  62. Liu W, Chun E, Thompson A, Chubukov P, Xu F, KATRITCH V, et al. Structural basis for allosteric regulation of GPCRs by sodium ions. Science. 2012;337:232-6 pubmed publisher
  63. Hirota T, Lee J, St John P, Sawa M, Iwaisako K, Noguchi T, et al. Identification of small molecule activators of cryptochrome. Science. 2012;337:1094-7 pubmed publisher
  64. Padmanabhan K, Robles M, Westerling T, Weitz C. Feedback regulation of transcriptional termination by the mammalian circadian clock PERIOD complex. Science. 2012;337:599-602 pubmed publisher
  65. Hoffmeyer K, Raggioli A, Rudloff S, Anton R, Hierholzer A, Del Valle I, et al. Wnt/?-catenin signaling regulates telomerase in stem cells and cancer cells. Science. 2012;336:1549-54 pubmed publisher
  66. Qian W, Miki D, Zhang H, Liu Y, Zhang X, Tang K, et al. A histone acetyltransferase regulates active DNA demethylation in Arabidopsis. Science. 2012;336:1445-8 pubmed publisher
  67. Stehling O, Vashisht A, Mascarenhas J, Jonsson Z, Sharma T, Netz D, et al. MMS19 assembles iron-sulfur proteins required for DNA metabolism and genomic integrity. Science. 2012;337:195-9 pubmed publisher
  68. Gari K, León Ortiz A, Borel V, Flynn H, Skehel J, Boulton S. MMS19 links cytoplasmic iron-sulfur cluster assembly to DNA metabolism. Science. 2012;337:243-5 pubmed publisher
  69. Liu T, Liu Z, Song C, Hu Y, Han Z, She J, et al. Chitin-induced dimerization activates a plant immune receptor. Science. 2012;336:1160-4 pubmed publisher
  70. Huang N, Chelliah Y, Shan Y, Taylor C, Yoo S, PARTCH C, et al. Crystal structure of the heterodimeric CLOCK:BMAL1 transcriptional activator complex. Science. 2012;337:189-94 pubmed publisher
  71. Song Y, Smith R, To B, Millar A, Imaizumi T. FKF1 conveys timing information for CONSTANS stabilization in photoperiodic flowering. Science. 2012;336:1045-9 pubmed publisher
  72. Lu W, Hu Y, Chen G, Chen Z, Zhang H, Wang F, et al. Novel role of NOX in supporting aerobic glycolysis in cancer cells with mitochondrial dysfunction and as a potential target for cancer therapy. PLoS Biol. 2012;10:e1001326 pubmed publisher
  73. Tagliabracci V, Engel J, Wen J, Wiley S, Worby C, Kinch L, et al. Secreted kinase phosphorylates extracellular proteins that regulate biomineralization. Science. 2012;336:1150-3 pubmed publisher
  74. Sfeir A, de Lange T. Removal of shelterin reveals the telomere end-protection problem. Science. 2012;336:593-7 pubmed publisher
  75. Garelli A, Gontijo A, Miguela V, Caparros E, Dominguez M. Imaginal discs secrete insulin-like peptide 8 to mediate plasticity of growth and maturation. Science. 2012;336:579-82 pubmed publisher
  76. Lin S, Li T, Liu Q, Zhang C, Li X, Chen Y, et al. GSK3-TIP60-ULK1 signaling pathway links growth factor deprivation to autophagy. Science. 2012;336:477-81 pubmed publisher
  77. Hawley S, Fullerton M, Ross F, Schertzer J, Chevtzoff C, Walker K, et al. The ancient drug salicylate directly activates AMP-activated protein kinase. Science. 2012;336:918-22 pubmed publisher
  78. Wollam J, Magner D, Magomedova L, Rass E, Shen Y, Rottiers V, et al. A novel 3-hydroxysteroid dehydrogenase that regulates reproductive development and longevity. PLoS Biol. 2012;10:e1001305 pubmed publisher
  79. Muller P, Rogers K, Jordan B, Lee J, Robson D, Ramanathan S, et al. Differential diffusivity of Nodal and Lefty underlies a reaction-diffusion patterning system. Science. 2012;336:721-4 pubmed publisher
  80. Bosveld F, Bonnet I, Guirao B, Tlili S, Wang Z, Petitalot A, et al. Mechanical control of morphogenesis by Fat/Dachsous/Four-jointed planar cell polarity pathway. Science. 2012;336:724-7 pubmed publisher
  81. Shenoy A, Wellington D, Kumar P, Kassa H, Booth C, Cresswell P, et al. GBP5 promotes NLRP3 inflammasome assembly and immunity in mammals. Science. 2012;336:481-5 pubmed publisher
  82. Lee J, Silhavy J, Lee J, Al Gazali L, Thomas S, Davis E, et al. Evolutionarily assembled cis-regulatory module at a human ciliopathy locus. Science. 2012;335:966-9 pubmed publisher
  83. Xia R, Jia H, Fan J, Liu Y, Jia J. USP8 promotes smoothened signaling by preventing its ubiquitination and changing its subcellular localization. PLoS Biol. 2012;10:e1001238 pubmed publisher
  84. Inamori K, Yoshida Moriguchi T, Hara Y, Anderson M, Yu L, Campbell K. Dystroglycan function requires xylosyl- and glucuronyltransferase activities of LARGE. Science. 2012;335:93-6 pubmed publisher
  85. Brar G, Yassour M, Friedman N, Regev A, Ingolia N, Weissman J. High-resolution view of the yeast meiotic program revealed by ribosome profiling. Science. 2012;335:552-7 pubmed publisher
  86. Zofall M, Yamanaka S, REYES TURCU F, Zhang K, Rubin C, Grewal S. RNA elimination machinery targeting meiotic mRNAs promotes facultative heterochromatin formation. Science. 2012;335:96-100 pubmed publisher
  87. Cruz Migoni A, Hautbergue G, Artymiuk P, Baker P, Bokori Brown M, Chang C, et al. A Burkholderia pseudomallei toxin inhibits helicase activity of translation factor eIF4A. Science. 2011;334:821-4 pubmed publisher
  88. Du J, Zhou Y, Su X, Yu J, Khan S, Jiang H, et al. Sirt5 is a NAD-dependent protein lysine demalonylase and desuccinylase. Science. 2011;334:806-9 pubmed publisher
  89. Hsin J, Sheth A, Manley J. RNAP II CTD phosphorylated on threonine-4 is required for histone mRNA 3' end processing. Science. 2011;334:683-6 pubmed publisher
  90. Zoncu R, Bar Peled L, Efeyan A, Wang S, Sancak Y, Sabatini D. mTORC1 senses lysosomal amino acids through an inside-out mechanism that requires the vacuolar H(+)-ATPase. Science. 2011;334:678-83 pubmed publisher
  91. Anastasiou D, Poulogiannis G, Asara J, Boxer M, Jiang J, Shen M, et al. Inhibition of pyruvate kinase M2 by reactive oxygen species contributes to cellular antioxidant responses. Science. 2011;334:1278-83 pubmed publisher
  92. Dueber E, Schoeffler A, Lingel A, Elliott J, Fedorova A, Giannetti A, et al. Antagonists induce a conformational change in cIAP1 that promotes autoubiquitination. Science. 2011;334:376-80 pubmed publisher
  93. Vaishnava S, Yamamoto M, Severson K, Ruhn K, Yu X, Koren O, et al. The antibacterial lectin RegIIIgamma promotes the spatial segregation of microbiota and host in the intestine. Science. 2011;334:255-8 pubmed publisher
  94. DiTacchio L, Le H, Vollmers C, Hatori M, Witcher M, Secombe J, et al. Histone lysine demethylase JARID1a activates CLOCK-BMAL1 and influences the circadian clock. Science. 2011;333:1881-5 pubmed publisher
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